TWI829176B - Motor driver having start-up adjusting mechanism - Google Patents
Motor driver having start-up adjusting mechanism Download PDFInfo
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- 238000001514 detection method Methods 0.000 claims description 51
- 238000007781 pre-processing Methods 0.000 claims description 2
- 238000010586 diagram Methods 0.000 description 21
- 230000004913 activation Effects 0.000 description 6
- 238000001816 cooling Methods 0.000 description 2
- 238000010438 heat treatment Methods 0.000 description 2
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02P—CONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
- H02P6/00—Arrangements for controlling synchronous motors or other dynamo-electric motors using electronic commutation dependent on the rotor position; Electronic commutators therefor
- H02P6/08—Arrangements for controlling the speed or torque of a single motor
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02P—CONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
- H02P6/00—Arrangements for controlling synchronous motors or other dynamo-electric motors using electronic commutation dependent on the rotor position; Electronic commutators therefor
- H02P6/20—Arrangements for starting
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K11/00—Structural association of dynamo-electric machines with electric components or with devices for shielding, monitoring or protection
- H02K11/30—Structural association with control circuits or drive circuits
- H02K11/33—Drive circuits, e.g. power electronics
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02P—CONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
- H02P6/00—Arrangements for controlling synchronous motors or other dynamo-electric motors using electronic commutation dependent on the rotor position; Electronic commutators therefor
- H02P6/08—Arrangements for controlling the speed or torque of a single motor
- H02P6/085—Arrangements for controlling the speed or torque of a single motor in a bridge configuration
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02P—CONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
- H02P2209/00—Indexing scheme relating to controlling arrangements characterised by the waveform of the supplied voltage or current
- H02P2209/07—Trapezoidal waveform
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02P—CONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
- H02P2209/00—Indexing scheme relating to controlling arrangements characterised by the waveform of the supplied voltage or current
- H02P2209/11—Sinusoidal waveform
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02P—CONTROL OR REGULATION OF ELECTRIC MOTORS, ELECTRIC GENERATORS OR DYNAMO-ELECTRIC CONVERTERS; CONTROLLING TRANSFORMERS, REACTORS OR CHOKE COILS
- H02P2209/00—Indexing scheme relating to controlling arrangements characterised by the waveform of the supplied voltage or current
- H02P2209/13—Different type of waveforms depending on the mode of operation
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- Engineering & Computer Science (AREA)
- Power Engineering (AREA)
- Microelectronics & Electronic Packaging (AREA)
- Control Of Electric Motors In General (AREA)
- Control Of Motors That Do Not Use Commutators (AREA)
Abstract
Description
本發明涉及馬達,特別是涉及一種具啟動調控機制的馬達驅動器。 The present invention relates to motors, and in particular to a motor driver with a start-up control mechanism.
在電子設備中,風扇馬達用於冷卻處理器等發熱元件。在風扇馬達冷卻發熱元件的過程中,需要即時取得馬達的電路的數據,才能依據數據精準地控制風扇馬達的轉速,使風扇馬達表現出最適當的冷卻性能,適當地冷卻發熱元件。 In electronic equipment, fan motors are used to cool heat-generating components such as processors. In the process of cooling the heating element by the fan motor, it is necessary to obtain the data of the motor circuit in real time, so that the speed of the fan motor can be accurately controlled based on the data, so that the fan motor can exhibit the most appropriate cooling performance and properly cool the heating element.
然而,傳統馬達驅動器每次皆輸出具有相同波形的啟動驅動訊號來啟動馬達。其結果為,當馬達的目標轉速較低時,傳統馬達驅動器剛開始輸出至馬達的如圖9所示的第一啟動驅動訊號PN01的波形的(波峰)值過大,導致馬達啟動後的轉速值過大。因此,傳統馬達驅動器後續進入一穩態時間區間後,需輸出如圖9所示的第一穩態波形訊號TN02的波形以驅動馬達運轉,需再多耗費一段時間將馬達的轉速逐漸降低回目標轉速值。如圖9所示,傳統馬達驅動器總共多耗費了時間Tloss。 However, traditional motor drivers output a start drive signal with the same waveform every time to start the motor. As a result, when the target speed of the motor is low, the waveform (peak) value of the first start drive signal PN01 shown in Figure 9 that the traditional motor driver just outputs to the motor is too large, causing the speed value after the motor is started to be too large. Too big. Therefore, after the traditional motor driver subsequently enters a steady-state time interval, it needs to output the waveform of the first steady-state waveform signal TN02 as shown in Figure 9 to drive the motor, and it will take another period of time to gradually reduce the motor speed back to the target. Speed value. As shown in Figure 9, the traditional motor driver consumes a total of more time Tloss.
當馬達的目標轉速較高,傳統馬達驅動器剛開始輸出至馬達的如圖10所示的第一啟動驅動訊號PN2的波形的(波峰)值太小時,將導致再進入穩態時間區間內後,需輸出如圖10所示的第一穩態波形訊號TN22的波形以驅 動馬達運轉,此時需再多耗費時間Tloss2,才能讓馬達的轉速逐漸增加至目標轉速。 When the target speed of the motor is high, the waveform (peak) value of the first start drive signal PN2 shown in Figure 10 that the traditional motor driver first outputs to the motor will be too small, which will cause it to enter the steady state time interval again. It is necessary to output the waveform of the first steady-state waveform signal TN22 as shown in Figure 10 to drive To make the motor run, it will take more time Tloss2 to gradually increase the motor speed to the target speed.
本發明所要解決的技術問題在於,針對現有技術的不足提供一種具啟動調控機制的馬達驅動器,適用於啟動馬達。此馬達驅動器包含穩態偵測電路、啟動波形圖樣電路、啟動波形產生電路、馬達控制電路以及馬達驅動電路。穩態偵測電路連接馬達。穩態偵測電路配置以在前置作業中偵測用於驅動馬達穩態運轉的數據,以輸出穩態偵測訊號。啟動波形圖樣電路連接穩態偵測電路。啟動波形圖樣電路配置以儲存多個啟動波形圖樣,依據穩態偵測訊號以從多個啟動波形圖樣中選擇其中一者,以輸出一啟動波形圖樣訊號。啟動波形產生電路配置以依據啟動波形圖樣訊號的多個波形以決定第一啟動波形訊號的多個波形,並輸出第一啟動波形訊號。馬達控制電路配置以依據第一啟動波形訊號以輸出一啟動控制訊號,並輸出一穩態控制訊號。馬達驅動電路連接馬達控制電路以及馬達。馬達驅動電路配置以依據啟動控制訊號以輸出一啟動驅動訊號至馬達以啟動馬達。在啟動馬達之後,馬達驅動電路配置以依據穩態控制訊號以輸出一穩態驅動訊號至馬達以驅動馬達穩態運轉。 The technical problem to be solved by the present invention is to provide a motor driver with a starting control mechanism in view of the shortcomings of the existing technology, which is suitable for starting motors. This motor driver includes a steady-state detection circuit, a startup waveform pattern circuit, a startup waveform generation circuit, a motor control circuit and a motor drive circuit. The steady state detection circuit is connected to the motor. The steady-state detection circuit is configured to detect data used to drive the steady-state operation of the motor in the front-end operation to output a steady-state detection signal. Start the waveform pattern circuit to connect to the steady-state detection circuit. The startup waveform pattern circuit is configured to store a plurality of startup waveform patterns, and selects one of the plurality of startup waveform patterns according to the steady-state detection signal to output a startup waveform pattern signal. The startup waveform generating circuit is configured to determine multiple waveforms of the first startup waveform signal based on the multiple waveforms of the startup waveform pattern signal, and output the first startup waveform signal. The motor control circuit is configured to output a starting control signal according to the first starting waveform signal and to output a steady-state control signal. The motor drive circuit connects the motor control circuit and the motor. The motor driving circuit is configured to output a starting driving signal to the motor according to the starting control signal to start the motor. After starting the motor, the motor drive circuit is configured to output a steady-state drive signal to the motor according to the steady-state control signal to drive the motor to operate in a steady state.
在實施例中,馬達驅動電路依據穩態控制訊號,基於啟動波形產生電路所產生的第一穩態波形訊號以輸出穩態驅動訊號。穩態偵測電路偵測第一穩態波形訊號或穩態驅動訊號的多個波形,以輸出穩態偵測訊號。 In an embodiment, the motor driving circuit outputs a steady-state driving signal based on the first steady-state waveform signal generated by the startup waveform generation circuit according to the steady-state control signal. The steady-state detection circuit detects the first steady-state waveform signal or multiple waveforms of the steady-state driving signal to output a steady-state detection signal.
在實施例中,穩態偵測電路配置以偵測第一穩態波形訊號或穩態驅動訊號的多個波形的工作週期,以輸出穩態偵測訊號。 In an embodiment, the steady-state detection circuit is configured to detect duty cycles of the first steady-state waveform signal or multiple waveforms of the steady-state driving signal to output a steady-state detection signal.
在實施例中,穩態偵測電路配置以偵測第一穩態波形訊號的多 個波形的值,以輸出穩態偵測訊號。 In an embodiment, the steady-state detection circuit is configured to detect multiple components of the first steady-state waveform signal. The value of a waveform is used to output a steady-state detection signal.
在實施例中,穩態偵測電路偵測第一穩態波形訊號的多個波形中最後出現的波形的波峰值,以輸出穩態偵測訊號。 In an embodiment, the steady-state detection circuit detects the peak value of the last waveform among the plurality of waveforms of the first steady-state waveform signal to output the steady-state detection signal.
在實施例中,啟動波形圖樣電路以從多個啟動波形圖樣中選擇選擇的其中一啟動波形圖樣的多個波形中最後出現的一或多者與第一穩態波形訊號的一波形的相同。 In an embodiment, the activation waveform pattern circuit is configured to select one or more of the waveforms of the selected one of the activation waveform patterns from the plurality of activation waveform patterns that are the same as a waveform of the first steady-state waveform signal.
在實施例中,啟動波形圖樣電路儲存的多個啟動波形圖樣包含第一啟動波形圖樣以及第二啟動波形圖樣。當穩態偵測電路偵測到的數據大於門檻值時,啟動波形圖樣電路選擇第一啟動波形圖樣。當穩態偵測電路偵測到的數據不大於門檻值時,啟動波形圖樣電路選擇第二啟動波形圖樣。 In an embodiment, the plurality of startup waveform patterns stored by the startup waveform pattern circuit include a first startup waveform pattern and a second startup waveform pattern. When the data detected by the steady-state detection circuit is greater than the threshold value, the start-up waveform pattern circuit selects the first start-up waveform pattern. When the data detected by the steady-state detection circuit is not greater than the threshold value, the start-up waveform pattern circuit selects the second start-up waveform pattern.
在實施例中,當馬達的目標轉速越大時,啟動波形圖樣電路從多個啟動波形圖樣中選擇的啟動波形圖樣的波形具有越大的波峰值或振幅。 In an embodiment, when the target rotation speed of the motor is larger, the waveform of the startup waveform pattern selected by the startup waveform pattern circuit from the plurality of startup waveform patterns has a larger peak value or amplitude.
在實施例中,各啟動波形圖樣的多個波形中越晚出現者具有越大的波峰值或振幅。 In an embodiment, among the multiple waveforms of each starting waveform pattern, the later one appears has a larger peak value or amplitude.
在實施例中,啟動波形產生電路比較第一啟動波形訊號與第二啟動波形訊號在多個時間點的值,以決定啟動控制訊號的多個波形分別的多個工作週期。 In an embodiment, the startup waveform generating circuit compares the values of the first startup waveform signal and the second startup waveform signal at multiple time points to determine multiple duty cycles of the multiple waveforms of the startup control signal.
在實施例中,第一啟動波形訊號的多個波形包含多個正弦波波形、三次諧波波形或其組合。第二啟動波形訊號的多個波形包含多個三角波波形、鋸齒波波形或其組合。 In an embodiment, the plurality of waveforms of the first activation waveform signal include a plurality of sine wave waveforms, third harmonic waveforms or combinations thereof. The plurality of waveforms of the second starting waveform signal include a plurality of triangular waveforms, sawtooth waveforms or combinations thereof.
如上所述,本發明提供一種具啟動調控機制的馬達驅動器,其可偵測用以驅動馬達穩態運轉的數據,來決定用來啟動馬達的啟動驅動訊號的波形。如此,在啟動之後的馬達的電流和電壓訊號不會具有過衝現象,馬達的轉速可快速直接增加至目標轉速,同時不會有不必要的能量浪費。 As mentioned above, the present invention provides a motor driver with a start control mechanism, which can detect the data used to drive the steady-state operation of the motor to determine the waveform of the start drive signal used to start the motor. In this way, the current and voltage signals of the motor after starting will not have overshoot, and the motor speed can be quickly and directly increased to the target speed without unnecessary waste of energy.
為使能更進一步瞭解本發明的特徵及技術內容,請參閱以下有關本發明的詳細說明與圖式,然而所提供的圖式僅用於提供參考與說明,並非用來對本發明加以限制。 In order to further understand the features and technical content of the present invention, please refer to the following detailed description and drawings of the present invention. However, the drawings provided are only for reference and illustration and are not used to limit the present invention.
10:穩態偵測電路 10: Steady state detection circuit
20:啟動波形圖樣電路 20: Start the waveform pattern circuit
30:啟動波形產生電路 30: Start the waveform generation circuit
40:馬達控制電路 40: Motor control circuit
50:馬達驅動電路 50: Motor drive circuit
MT:馬達 MT: motor
HD1:第一上橋開關 HD1: The first upper bridge switch
HD2:第二上橋開關 HD2: The second upper bridge switch
HD3:第三上橋開關 HD3: The third upper bridge switch
LD1:第一下橋開關 LD1: first lower bridge switch
LD2:第二下橋開關 LD2: The second lower bridge switch
LD3:第三下橋開關 LD3: The third lower bridge switch
VM:共用電壓 VM: common voltage
PN1:第一啟動波形圖樣 PN1: First start waveform pattern
PN2:第二啟動波形圖樣 PN2: Second start waveform pattern
TN21、TN22:第一穩態波形訊號 TN21, TN22: the first steady-state waveform signal
WS21、WS22:第一啟動波形訊號 WS21, WS22: first start wave signal
WS1:第二啟動波形訊號 WS1: Second start wave signal
WLS、ULS、VLS:啟動控制訊號 WLS, ULS, VLS: start control signal
PN01:第一啟動波形訊號 PN01: First start wave signal
TN02:第一穩態波形訊號 TN02: The first steady-state waveform signal
Tloss、Tloss2:時間 Tloss, Tloss2: time
圖1為本發明實施例的具啟動調控機制的馬達驅動器的方塊圖。 FIG. 1 is a block diagram of a motor driver with a start-up control mechanism according to an embodiment of the present invention.
圖2為本發明實施例的具啟動調控機制的馬達驅動器的馬達驅動電路與馬達的電路圖。 FIG. 2 is a circuit diagram of the motor drive circuit and the motor of the motor driver with a start-up control mechanism according to an embodiment of the present invention.
圖3為本發明實施例的具啟動調控機制的馬達驅動器的訊號的波形圖。 FIG. 3 is a waveform diagram of a signal of a motor driver with a start-up control mechanism according to an embodiment of the present invention.
圖4為本發明實施例的具啟動調控機制的馬達驅動器的訊號的波形圖。 FIG. 4 is a waveform diagram of a signal of a motor driver with a start-up control mechanism according to an embodiment of the present invention.
圖5為本發明實施例的具啟動調控機制的馬達驅動器的訊號的波形圖。 FIG. 5 is a waveform diagram of a signal of a motor driver with a start-up control mechanism according to an embodiment of the present invention.
圖6為本發明實施例的具啟動調控機制的馬達驅動器的訊號的波形圖。 FIG. 6 is a waveform diagram of a signal of a motor driver with a start-up control mechanism according to an embodiment of the present invention.
圖7為本發明實施例的具啟動調控機制的馬達驅動器的訊號的波形圖。 FIG. 7 is a waveform diagram of a signal of a motor driver with a start-up control mechanism according to an embodiment of the present invention.
圖8為本發明實施例的具啟動調控機制的馬達驅動器的訊號的波形圖。 FIG. 8 is a waveform diagram of a signal of a motor driver with a start-up control mechanism according to an embodiment of the present invention.
圖9為傳統馬達驅動器的訊號的波形圖。 Figure 9 is a waveform diagram of a signal of a conventional motor driver.
圖10為傳統馬達驅動器的訊號的波形圖。 Figure 10 is a waveform diagram of a signal of a conventional motor driver.
以下是通過特定的具體實施例來說明本發明的實施方式,本領域技術人員可由本說明書所公開的內容瞭解本發明的優點與效果。本發明可通過其他不同的具體實施例加以施行或應用,本說明書中的各項細節也可基於不同觀點與應用,在不背離本發明的構思下進行各種修改與變更。另外,本發明的附圖僅為簡單示意說明,並非依實際尺寸的描繪,事先聲明。以下的實施方式將進一步詳細說明本發明的相關技術內容,但所公開的內容並非用以限制本發明的保護範圍。另外,本文中所使用的術語“或”,應視實際情況可能包含相關聯的列出項目中的任一個或者多個的組合。 The following is a specific example to illustrate the implementation of the present invention. Those skilled in the art can understand the advantages and effects of the present invention from the content disclosed in this specification. The present invention can be implemented or applied through other different specific embodiments, and various details in this specification can also be modified and changed based on different viewpoints and applications without departing from the concept of the present invention. In addition, the drawings of the present invention are only simple schematic illustrations and are not depictions based on actual dimensions, as is stated in advance. The following embodiments will further describe the relevant technical content of the present invention in detail, but the disclosed content is not intended to limit the scope of the present invention. In addition, the term "or" used in this article shall include any one or combination of more of the associated listed items, depending on the actual situation.
請參閱圖1和圖2,其中圖1為本發明實施例的具啟動調控機制的馬達驅動器的方塊圖;圖2為本發明實施例的具啟動調控機制的馬達驅動器的馬達驅動電路與馬達的電路圖。 Please refer to Figures 1 and 2. Figure 1 is a block diagram of a motor driver with a start-up control mechanism according to an embodiment of the present invention; Figure 2 is a motor drive circuit and a motor of a motor driver with a start-up control mechanism according to an embodiment of the present invention. Circuit diagram.
本發明實施例的具啟動調控機制的馬達驅動器可包含如圖1所示的穩態偵測電路10、啟動波形圖樣電路20、啟動波形產生電路30、馬達控制電路40以及馬達驅動電路50。
The motor driver with a start-up control mechanism according to the embodiment of the present invention may include a steady-
啟動波形圖樣電路20可連接穩態偵測電路10以及啟動波形產生電路30。馬達控制電路40可連接啟動波形產生電路30以及馬達驅動電路50。馬達驅動電路50可連接馬達MT。
The startup
穩態偵測電路10可連接馬達MT。在前置作業中,穩態偵測電路10可偵測用於驅動馬達MT穩態運轉的數據,以輸出一穩態偵測訊號。
The steady-
啟動波形圖樣電路20可儲存多個啟動波形圖樣。當啟動波形圖樣電路20從穩態偵測電路10接收到穩態偵測訊號時,啟動波形圖樣電路20可依據穩態偵測訊號以從多個啟動波形圖樣中,選擇其中一個啟動波形圖樣,以輸出一啟動波形圖樣訊號。
The startup
啟動波形產生電路30可依據從啟動波形圖樣電路20接收到的啟
動波形圖樣訊號的多個波形,以決定第一啟動波形訊號的多個波形,並輸出第一啟動波形訊號至馬達控制電路40。
The startup
馬達控制電路40可依據從啟動波形產生電路30接收到的第一啟動波形訊號,以輸出一啟動控制訊號至馬達驅動電路50。馬達驅動電路50可在一啟動時間區間內,依據啟動控制訊號以輸出一啟動驅動訊號至馬達MT,以啟動馬達MT。
The
在馬達MT啟動之後,即在啟動時間區間結束後的一穩態時間區間內,馬達控制電路40可輸出一穩態控制訊號至馬達驅動電路50。接著,馬達驅動電路50可依據穩態控制訊號以輸出一穩態驅動訊號至馬達MT,以驅動馬達MT穩態運轉。馬達MT的轉速依據此穩態驅動訊號,快速增加至目標轉速,最後穩態以目標轉速運轉。
After the motor MT is started, that is, within a steady-state time interval after the end of the starting time interval, the
詳言之,啟動波形產生電路30可產生第一穩態波形訊號。第一穩態波形訊號的多個波形可包含正弦波波形或三次諧波波形。若有需要,啟動波形產生電路30可再產生第二穩態波形訊號。第二穩態波形訊號的多個波形可包含三角波波形或鋸齒波波形。
In detail, starting the
馬達驅動電路50可依據從馬達控制電路40接收到的一穩態控制訊號,依據第一穩態波形訊號以及第二穩態波形訊號,以輸出一穩態驅動訊號至馬達MT,以驅動馬達MT穩態運轉。
The
在前置作業中,穩態偵測電路10可連接馬達驅動電路50或啟動波形產生電路30,以偵測上述穩態驅動訊號或第一穩態波形訊號的數據,例如穩態驅動訊號或第一穩態波形訊號的一或多個波形的工作週期和值,以輸出一穩態偵測訊號。穩態偵測電路10可僅偵測第一穩態波形訊號的多個波形中最後出現的波形的波峰值。
In the preparatory operation, the steady-
詳言之,馬達驅動電路50可包含橋式電路。橋式電路可包含多
個開關元件。多個開關元件可包含多個上橋開關例如圖2所示的第一上橋開關HD1、第二上橋開關HD2、第三上橋開關HD3,並可包含多個下橋開關例如圖2所示的第一下橋開關LD1、第二下橋開關LD2以及第三下橋開關LD3。
In detail, the
第一上橋開關HD1的第一端、第二上橋開關HD2的第一端以及第三上橋開關HD3的第一端可耦接共用電壓VM。第一上橋開關HD1的第二端可連接第一下橋開關LD1的第一端。第二上橋開關HD2的第二端可連接第二下橋開關LD2第一端。第三上橋開關HD3的第二端可連接第三下橋開關LD3的第一端。第一下橋開關LD1的第二端、第二下橋開關LD2的第二端以及第三下橋開關LD3的第二端可接地。 The first terminal of the first high-bridge switch HD1, the first terminal of the second high-bridge switch HD2, and the first terminal of the third high-bridge switch HD3 may be coupled to the common voltage VM. The second terminal of the first high-bridge switch HD1 can be connected to the first terminal of the first low-bridge switch LD1. The second terminal of the second high-bridge switch HD2 can be connected to the first terminal of the second low-bridge switch LD2. The second terminal of the third high-bridge switch HD3 can be connected to the first terminal of the third low-bridge switch LD3. The second terminal of the first low-bridge switch LD1, the second terminal of the second low-bridge switch LD2, and the second terminal of the third low-bridge switch LD3 may be grounded.
第一上橋開關HD1的第二端與第一下橋開關LD1的第一端之間的節點可連接馬達MT的第一端例如U相端。第二上橋開關HD2的第二端與第二下橋開關LD2第一端之間的節點可連接馬達MT的第二端例如V相端。第三上橋開關HD3的第二端與第三下橋開關LD3的第一端之間的節點可連接馬達MT的第三端例如W相端。 The node between the second terminal of the first high-bridge switch HD1 and the first terminal of the first low-bridge switch LD1 may be connected to the first terminal of the motor MT, such as the U-phase terminal. The node between the second terminal of the second high-bridge switch HD2 and the first terminal of the second low-bridge switch LD2 may be connected to the second terminal of the motor MT, such as the V-phase terminal. The node between the second terminal of the third high-bridge switch HD3 and the first terminal of the third low-bridge switch LD3 may be connected to the third terminal of the motor MT, such as the W-phase terminal.
馬達控制電路40可連接馬達驅動電路50的各上橋開關的控制端以及各下橋開關的控制端,以控制各上橋開關以及各下橋開關啟閉。
The
馬達控制電路40可依序輸出上述啟動控制訊號以及穩態控制訊號至馬達驅動電路50的多個開關元件的控制端,以控制這些開關元件啟動馬達MT,以及在啟動馬達MT之後驅動馬達MT穩態運轉。
The
請參閱圖1、圖3和圖4,其中圖1為本發明實施例的具啟動調控機制的馬達驅動器的方塊圖,圖3和圖4為本發明實施例的具啟動調控機制的馬達驅動器的訊號的波形圖。 Please refer to Figures 1, 3 and 4. Figure 1 is a block diagram of a motor driver with a start-up control mechanism according to an embodiment of the present invention. Figures 3 and 4 are diagrams of a motor driver with a start-up control mechanism according to an embodiment of the present invention. The waveform diagram of the signal.
如圖1所示的啟動波形圖樣電路20可儲存多個啟動波形圖樣,例如圖3所示的第一啟動波形圖樣PN1以及如圖4所示的第二啟動波形圖樣
PN2,在此僅舉例說明,本發明不以此為限。
The startup
如圖3所示,第一啟動波形圖樣PN1的多個波形中的數者或全部可彼此具有不同的(波峰、振幅)值。如圖4所示,第二啟動波形圖樣PN2的多個波形中的數者或全部可彼此具有不同的(波峰、振幅)值。 As shown in FIG. 3 , some or all of the plurality of waveforms of the first startup waveform pattern PN1 may have different (peak, amplitude) values from each other. As shown in FIG. 4 , some or all of the plurality of waveforms of the second startup waveform pattern PN2 may have different (peak, amplitude) values from each other.
如圖3所示,第一啟動波形圖樣PN1的多個波形的(波峰、振幅)值可隨時間逐漸增加。如圖4所示,第二啟動波形圖樣PN2的多個波形的(波峰、振幅)值可隨時間逐漸增加。 As shown in FIG. 3 , the values (peaks, amplitudes) of the multiple waveforms of the first startup waveform pattern PN1 may gradually increase over time. As shown in FIG. 4 , the values (peaks, amplitudes) of the multiple waveforms of the second starting waveform pattern PN2 may gradually increase over time.
換言之,在各啟動波形圖樣(例如圖3所示的第一啟動波形圖樣PN1以及圖4所示的第二啟動波形圖樣PN2)的多個波形中,越晚出現的波形可具有越大的峰值。而越晚出現的波形的峰值可越接近第一穩態波形訊號的每一波形。 In other words, among the multiple waveforms of each startup waveform pattern (such as the first startup waveform pattern PN1 shown in FIG. 3 and the second startup waveform pattern PN2 shown in FIG. 4 ), the waveform that appears later may have a larger peak value. . The peak value of the waveform appearing later can be closer to each waveform of the first steady-state waveform signal.
第一啟動波形圖樣PN1的多個波形在多個時間點的波峰值,分別大於如圖4所示的第二啟動波形圖樣PN2的多個波形在這些時間點的波峰值。第一啟動波形圖樣PN1的多個波形在多個時間點的振幅,分別大於如圖4所示的第二啟動波形圖樣PN2的多個波形在這些時間點的振幅。 The peak values of the multiple waveforms of the first starting waveform pattern PN1 at multiple time points are respectively greater than the peak values of the multiple waveforms of the second starting waveform pattern PN2 at these time points as shown in FIG. 4 . The amplitudes of the multiple waveforms of the first starting waveform pattern PN1 at multiple time points are respectively greater than the amplitudes of the multiple waveforms of the second starting waveform pattern PN2 at these time points as shown in FIG. 4 .
因此,如圖3所示的第一啟動波形圖樣PN1適用於在驅動馬達MT以相對較高的目標轉速穩態運轉之前啟動馬達MT。相比之下,如圖4所示的第二啟動波形圖樣PN2則適用於在驅動馬達MT以相對較低的目標轉速穩態運轉之前啟動馬達MT。 Therefore, the first starting waveform pattern PN1 shown in FIG. 3 is suitable for starting the motor MT before the driving motor MT operates at a relatively high target speed in a steady state. In contrast, the second starting waveform pattern PN2 shown in FIG. 4 is suitable for starting the motor MT before the driving motor MT operates at a relatively low target speed in a steady state.
當穩態偵測電路10判斷偵測到的數據(例如上述第一穩態波形訊號的工作週期或值例如峰值)大於一門檻值時,啟動波形圖樣電路20可依據從穩態偵測電路10所接收到的一穩態偵測訊號,以選擇具有較大波峰值或振幅的那一啟動波形圖樣,例如圖3所示的第一啟動波形圖樣PN1。
When the steady-
相反地,當穩態偵測電路10判斷偵測到的數據不大於門檻值
時,啟動波形圖樣電路可依據從穩態偵測電路10所接收到的一穩態偵測訊號,以選擇具有較小波峰值或振幅的那一啟動波形圖樣,例如圖4所示的第二啟動波形圖樣PN2。
On the contrary, when the steady-
請參閱圖1和圖5,其中圖1為本發明實施例的具啟動調控機制的馬達驅動器的方塊圖,圖5為本發明實施例的具啟動調控機制的馬達驅動器的訊號的波形圖。 Please refer to FIGS. 1 and 5 . FIG. 1 is a block diagram of a motor driver with a start-up control mechanism according to an embodiment of the present invention. FIG. 5 is a waveform diagram of a signal of a motor driver with a start-up control mechanism according to an embodiment of the present invention.
如圖1所示的啟動波形圖樣電路20從多個啟動波形圖樣中選擇如圖5所示的啟動波形圖樣PN2的多個波形中最後出現的一或多個波形,可與第一穩態波形訊號TN21的多個波形中的每一波形或僅最先出現的一或多個波形(的峰值、振幅和工作週期)相同。
The startup
在一啟動時間區間內,如圖1所示的馬達驅動電路50依據基於啟動波形圖樣電路20所選擇的那一個啟動波形圖樣PN2產生的啟動控制訊號,以輸出一啟動驅動訊號至馬達MT以啟動馬達MT。其結果為,如圖5所示,馬達MT的轉速線性地增加,快速地增加至目標轉速,並在穩態時間區間內維持以目標轉速運轉。
Within a starting time interval, the
請參閱圖1、圖5至圖7,其中圖1為本發明實施例的具啟動調控機制的馬達驅動器的方塊圖,圖5為本發明實施例的具啟動調控機制的馬達驅動器的訊號的波形圖。 Please refer to Figures 1, 5 to 7. Figure 1 is a block diagram of a motor driver with a start-up control mechanism according to an embodiment of the present invention. Figure 5 is a waveform of a signal of a motor driver with a start-up control mechanism according to an embodiment of the present invention. Figure.
當如圖1所示的穩態偵測電路10判斷目前偵測到的一穩態驅動訊號的工作週期較小時,例如不大於一工作週期門檻值時,如圖1所示的啟動波形圖樣電路20選擇如圖5所示的啟動波形圖樣PN2的多個波形中最後出現的波形與第一穩態波形訊號TN21的每一波形相同。如此,馬達MT的轉速可在啟動之後進入一穩態時間區間時達到目標轉速,並維持以目標轉速穩態運轉。
When the steady-
相反地,當穩態偵測電路10判斷目前偵測到的穩態驅動訊號(的
工作週期較大時,例如大於工作週期門檻值時,啟動波形圖樣電路20選擇的啟動波形圖樣PN2的多個波形的波峰值逐漸增加至接近第一穩態波形訊號TN21中最早出現的波形的波峰。如此,馬達MT的轉速可快速地達到目標轉速,並維持以目標轉速運轉。
On the contrary, when the steady-
如圖1所示的啟動波形圖樣電路20可儲存N個啟動波形圖樣,N為整數值,本發明不受限於啟動波形圖樣電路20所儲存的啟動波形圖樣的數量。如圖6所示在啟動時間區間內的波形為其中一個啟動波形圖樣。不同的啟動波形圖樣的多個波形的波峰值不同。N個啟動波形圖樣分別對應N個穩態工作週期。N個穩態工作週期分別對應馬達MT的N個目標轉速。
The startup
請參閱圖1、圖2和圖8,其中圖1為本發明實施例的具啟動調控機制的馬達驅動器的方塊圖,圖2為本發明實施例的具啟動調控機制的馬達驅動器的馬達驅動電路與馬達的電路圖,圖8為本發明實施例的具啟動調控機制的馬達驅動器的訊號的波形圖。 Please refer to Figures 1, 2 and 8. Figure 1 is a block diagram of a motor driver with a start-up control mechanism according to an embodiment of the present invention, and Figure 2 is a motor drive circuit of a motor driver with a start-up control mechanism according to an embodiment of the present invention. Together with the circuit diagram of the motor, FIG. 8 is a waveform diagram of the signal of the motor driver with a start-up control mechanism according to the embodiment of the present invention.
如圖1所示的啟動波形圖樣電路20所儲存的各啟動波形圖樣的多個波形可包含多個正弦波波形,例如圖3所示的第一啟動波形圖樣PN1包含多個正弦波波形,如圖4所示的第二啟動波形圖樣PN2包含多個正弦波波形。
The multiple waveforms of each startup waveform pattern stored in the startup
替換地,如圖1所示的啟動波形圖樣電路20所儲存的各啟動波形圖樣的多個波形可包含多個三次諧波波形。
Alternatively, the plurality of waveforms of each startup waveform pattern stored by the startup
如圖1所示的啟動波形產生電路30依據啟動波形圖樣所輸出的第一啟動波形訊號的多個波形與啟動波形圖樣的多個波形相同,例如皆為正弦波波形,或是如圖8所示的第一啟動波形訊號WS21包含多個三次諧波波形,如圖8所示的第一啟動波形訊號WS22包含多個正弦波波形,在此僅舉例說明,本發明不以此為限。
The plurality of waveforms of the first startup waveform signal output by the startup
啟動波形產生電路30可比較第一啟動波形訊號WS21與第二啟
動波形訊號WS1在多個時間點的(電壓)值,以決定啟動控制訊號WLS的多個波形在這些時間點的準位,進而決定啟動控制訊號WLS的多個波形分別的多個工作週期。
The startup
舉例而言,如圖8所示的第二啟動波形訊號WS1的多個波形可包含多個三角波波形、鋸齒波波形或其組合,在此僅舉例說明,本發明不以此為限。 For example, the multiple waveforms of the second startup waveform signal WS1 shown in FIG. 8 may include multiple triangular waveforms, sawtooth waveforms or combinations thereof. This is only an example and the invention is not limited thereto.
如圖1所示的啟動波形產生電路30可輸出啟動控制訊號WLS至馬達驅動電路50的任一開關元件的控制端,例如但不限於如圖2所示與馬達MT的W相端相連接的第三上橋開關HD3的控制端。此第三上橋開關HD3的導通時間為啟動控制訊號WLS為高準位的時間。
The startup
另外,啟動波形產生電路30可基於第一啟動波形訊號WS21,以輸出其他啟動控制訊號ULS、VLS至馬達驅動電路50的其他開關元件的控制端,例如但不限於如圖2所示與馬達MT的U相端、V相端分別相連接的第一上橋開關HD1以及第二上橋開關HD2的控制端。
In addition, the startup
綜上所述,本發明提供一種具啟動調控機制的馬達驅動器,其可偵測用以驅動馬達穩態運轉的數據,來決定用來啟動馬達的啟動驅動訊號的波形。如此,在啟動之後的馬達的電流和電壓訊號不會具有過衝現象,馬達的轉速可快速直接增加至目標轉速,同時不會有不必要的能量浪費。 To sum up, the present invention provides a motor driver with a start control mechanism, which can detect the data used to drive the steady-state operation of the motor to determine the waveform of the start drive signal used to start the motor. In this way, the current and voltage signals of the motor after starting will not have overshoot, and the motor speed can be quickly and directly increased to the target speed without unnecessary waste of energy.
以上所公開的內容僅為本發明的優選可行實施例,並非因此侷限本發明的申請專利範圍,所以凡是運用本發明說明書及圖式內容所做的等效技術變化,均包含於本發明的申請專利範圍內。 The contents disclosed above are only preferred and feasible embodiments of the present invention, and do not limit the scope of the patent application of the present invention. Therefore, all equivalent technical changes made by using the description and drawings of the present invention are included in the application of the present invention. within the scope of the patent.
10:穩態偵測電路 10: Steady state detection circuit
20:啟動波形圖樣電路 20: Start the waveform pattern circuit
30:啟動波形產生電路 30: Start the waveform generation circuit
40:馬達控制電路 40: Motor control circuit
50:馬達驅動電路 50: Motor drive circuit
MT:馬達 MT: motor
Claims (11)
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2022
- 2022-05-25 TW TW111119411A patent/TWI829176B/en active
- 2022-06-02 CN CN202210621037.0A patent/CN117175980A/en active Pending
- 2022-07-07 US US17/860,074 patent/US11955918B2/en active Active
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TW200406974A (en) * | 2002-05-24 | 2004-05-01 | Virginia Tech Intell Prop | Method and apparatus for identifying an operational phase of a motor phase winding and controlling energization of the phase winding |
US20070247102A1 (en) * | 2004-03-02 | 2007-10-25 | Kesatoshi Takeuchi | Motor and motor drive system |
US7956562B2 (en) * | 2004-03-02 | 2011-06-07 | Seiko Epson Corporation | Motor and motor drive system |
TW200604550A (en) * | 2004-07-29 | 2006-02-01 | Jaeger Ind Co Ltd | Position estimation and control device with high resolution |
EP2241270A2 (en) * | 2005-06-28 | 2010-10-20 | Stryker Corporation | Control assembly for a motorized surgical tool that contains a sensor that monitors the state of the motor rotor |
Also Published As
Publication number | Publication date |
---|---|
US20230387836A1 (en) | 2023-11-30 |
TW202347932A (en) | 2023-12-01 |
CN117175980A (en) | 2023-12-05 |
US11955918B2 (en) | 2024-04-09 |
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